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MKP1/CL100 controls tumor growth and sensitivity to cisplatin in non-small-cell lung cancer
S Chattopadhyay1, R Machado-Pinilla, C Manguan-García
1Translational Oncology Unit CSIC/UAM, Instituto de Investigaciones Biomédicas, C/Arturo Duperier, Madrid, Spain.
Abstract:
Non-small-cell lung cancer (NSCLC) represents the most frequent and therapy-refractive sub-class of lung cancer. Improving apoptosis induction in NSCLC represents a logical way forward in treating this tumor. Cisplatin, a commonly used therapeutic agent in NSCLC, induces activation of N-terminal-c-Jun kinase (JNK) that, in turn, mediates induction of apoptosis. In analysing surgical tissue samples of NSCLC, we found that expression of MKP1/CL100, a negative regulator of JNK, showed a strong nuclear staining for tumor cells, whereas, in normal bronchial epithelia, MKP1 was localized in the cytoplasm as well as in nuclei. In the NSCLC-derived cell lines H-460 and H-23, we found that MKP1 was constitutively expressed. Expressing a small-interfering RNA (siRNA) vector for MKP1 in H-460 cells resulted in a more efficient activation by cisplatin of JNK and p38 than in the parental cells, and this correlated with a 10-fold increase in sensitivity to cisplatin. A similar response was also observed in H-460 and H-23 cells when treated with the MKP1 expression inhibitor RO-31-8220. Moreover, expression of a siRNA-MKP2, an MKP1-related phosphatase, had no effect on H-460 cell viability response to cisplatin. Tumors induced by H-460 cells expressing MKP1 siRNA grew slower in nu(-)/nu(-) mice and showed more susceptibility to cisplatin than parental cells, and resulted in an impaired growth of the tumor in mice. On the other hand, overexpression of MKP1 in the H-1299 NSCLC-derived cell line resulted in further resistance to cisplatin. Overall, the results showed that inhibition of MKP1 expression contributes to a slow down in cell growth in mice and an increase of cisplatin-induced cell death in NSCLC. As such, MKP1 can be an attractive target in sensitizing cells to cisplatin to increase the effectiveness of the drug in treating NSCLC.
Insights
Inhibiting MKP1, a negative regulator of JNK, enhances cisplatin
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Non-small-cell lung cancer (NSCLC) is a common and difficult-to-treat cancer.
- Cisplatin is a standard NSCLC treatment that induces apoptosis via JNK activation.
- MKP1 (a negative regulator of JNK) is overexpressed in NSCLC, potentially hindering treatment.
Purpose of the Study:
- To investigate the role of MKP1 in NSCLC chemoresistance.
- To evaluate MKP1 as a therapeutic target for sensitizing NSCLC to cisplatin.
Main Methods:
- Analyzing NSCLC tissue samples for MKP1 expression and localization.
- Using siRNA to inhibit MKP1 expression in NSCLC cell lines (H-460, H-23).
- Treating cells and xenograft tumors with cisplatin and MKP1 inhibitors (RO-31-8220).
Main Results:
- NSCLC tumor cells show high nuclear MKP1 expression, unlike normal cells.
- MKP1 inhibition via siRNA or RO-31-8220 increased JNK/p38 activation and cisplatin sensitivity by 10-fold.
- MKP1 knockdown slowed tumor growth in mice and increased cisplatin efficacy.
- MKP1 overexpression conferred cisplatin resistance.
Conclusions:
- MKP1 is a key factor in NSCLC cisplatin resistance.
- Inhibiting MKP1 enhances apoptosis and resensitizes NSCLC to cisplatin.
- Targeting MKP1 represents a promising strategy to improve NSCLC treatment outcomes.
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